CA2959192C

Full spectrum electro-magnetic energy system

Abstract

Electro-magnetic (EM) energy collected in three dimensions, in layers allows for multiple planes to function operatively with optimized band gap structures whereby integrated variant and overlapping three-dimensional electro-magnetic films permit systems to collect energy across the entire electro-magnetic spectrum, and present systems utilizing both direct and indirect light to be leveraged. The EM-CS captures and contains more energy from EMR than conventional systems addressing global energy needs.

CA2959192C, drawing sheet 1
Sheet 1 of 21

Term

8.7 yearsleft in the term

Expires 22 May 2035.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

22 claims: 2 independent, 20 dependent

  1. 1
    CA 02959192 2016-10-31 WO 2015/179745 PCT/US2015/032148 What is claimed is:1. An improved high efficiency electromagnetic energy capturing system (EM-CS), which comprises, in combination: at least a body of material comprising an upper and lower surface layer, whereby the upper surface layer receives electromagnetic radiation (EMR) into the material;the upper and lower surface layers reflect internal EMR back into the material;the material substantially spans three dimensions of space between the upper surface layers and lower surface layers whereby the internal EMR interacts with the material in three dimensions;the material captures EMR traveling therein by means of the dense packed ribbon technology defined by a plurality of bandgaps whereby the internal EMR excites electrons from a valence band to a conduction band;and at least one electrode is in contact with the material to provide electrical energy, whereby greater than 50 efficiency is achieved of absorbed energy from the EV range.
  2. 17
    A process for generating power comprising:supplying a body of material with upper and lower surfaces defining a three dimensional space having dense packed material ribbon configured therein defined by a plurality of bandgaps and at least one electrode in contact therewith to produce electrical energy;receiving EM radiation;and converting more than 55% of energy in the EM radiation into electrical energy within an electromagnetic capturing system (EM-CS) having a flower-petal like geometric configuration.